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In situ hybridization histochemistry and immunocytochemistry reveal an increase in spinal dynorphin biosynthesis in a rat model of peripheral inflammation and hyperalgesia.

机译:原位杂交组织化学和免疫细胞化学显示,在周围发炎和痛觉过敏的大鼠模型中,脊髓强啡肽的生物合成增加。

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摘要

Dynorphin, an opioid peptide, is thought to play an important role in the modulation of nociceptive neural circuits at the level of the spinal cord. In a model of peripheral inflammation and hyperalgesia, an oligodeoxyribonucleotide probe complementary to a portion of preprodynorphin mRNA and antisera to dynorphin A-(1-8) were used to localize changes in dynorphin mRNA and peptide to individual spinal cord neurons. Intraplantar injection in rats of complete Freund's adjuvant resulted in edema and hyperalgesia to radiant heat stimulation of the injected hind paw that reached a peak at 4 days. At the same time, in situ hybridization histochemistry and immunocytochemistry identified an increase in transcription of preprodynorphin mRNA that was paralleled by an increase in dynorphin peptide. These changes were seen in spinal neurons in the medial two-thirds of laminae I and II and in laminae V and VI of lumbar segments receiving innervation from the inflamed paw. Since neurons demonstrating the increase in dynorphin biosynthesis are located in both the superficial and deep dorsal horn laminae, our data provide evidence for opioid modulation of nociceptive neural circuits in these two distinct spinal locations.
机译:强啡肽(阿片肽)被认为在脊髓水平的伤害性神经回路的调节中起重要作用。在周围炎症和痛觉过敏的模型中,与前强啡肽前体的一部分互补的寡脱氧核糖核苷酸探针和强啡肽A-(1-8)的抗血清用于将强啡肽的变化和肽定位于单个脊髓神经元。大鼠足底注射弗氏完全佐剂导致水肿和痛觉过敏,对所注射的后爪进行辐射热刺激,并在4天达到峰值。同时,原位杂交组织化学和免疫细胞化学鉴定了前强啡肽原mRNA转录的增加,与强啡肽的增加平行。这些变化可见于三分之二的椎板I和II的脊神经神经元,以及从发炎的爪得到神经支配的腰节的V和VI的椎板。由于表明强啡肽生物合成增加的神经元位于浅层和深背角层,因此我们的数据为这两个不同的脊髓位置的伤害性神经回路的阿片样物质调节提供了证据。

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